首页> 美国卫生研究院文献>The Journal of Biological Chemistry >NMR-directed design of pre-TCRβ and pMHC molecules implies a distinct geometry for pre-TCR relative to αβTCR recognition of pMHC
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NMR-directed design of pre-TCRβ and pMHC molecules implies a distinct geometry for pre-TCR relative to αβTCR recognition of pMHC

机译:TCRβ和pMHC分子的NMR定向设计意味着相对于pMHC的αβTCR识别pre-TCR具有独特的几何形状

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摘要

The pre-T cell receptor (pre-TCR) guides early thymocytes through maturation processes within the thymus via interaction with self-ligands displayed on thymic epithelial cells. The pre-TCR is a disulfide-linked heterodimer composed of an invariant pre-TCR α (pTα) subunit and a variable β subunit, the latter of which is incorporated into the mature TCR in subsequent developmental progression. This interaction of pre-TCR with peptide-major histocompatibility complex (pMHC) molecules has recently been shown to drive robust pre-TCR signaling and thymocyte maturation. Although the native sequences of β are properly folded and suitable for NMR studies in isolation, a tendency to self-associate rendered binding studies with physiological ligands difficult to interpret. Consequently, to structurally define this critical interaction, we have re-engineered the extracellular regions of β, designated as β-c1, for prokaryotic production to be used in NMR spectroscopy. Given the large size of the full extracellular domain of class I MHC molecules such as H-Kb, we produced a truncated form termed Kb-t harboring properties favorable for NMR measurements. This system has enabled robust measurement of a pre-TCR–pMHC interaction directly analogous to that of TCRαβ–pMHC. Binding surface analysis identified a contact surface comparable in size to that of the TCRαβ–pMHC but potentially with a rather distinct binding orientation. A tilting of the pre-TCRβ when bound to the pMHC ligand recognition surface versus the upright orientation of TCRαβ would alter the direction of force application between pre-TCR and TCR mechanosensors, impacting signal initiation.
机译:前T细胞受体(pre-TCR)通过与胸腺上皮细胞上显示的自身配体相互作用,引导早期胸腺细胞通过胸腺内的成熟过程。 pre-TCR是由不变的pre-TCRα(pTα)亚基和可变的β亚基组成的二硫键连接的异二聚体,后者在后续的发育过程中被掺入成熟的TCR中。最近显示,pre-TCR与肽-主要组织相容性复合物(pMHC)分子的这种相互作用可驱动强大的pre-TCR信号传导和胸腺细胞成熟。尽管β的天然序列被正确折叠并且适合单独进行NMR研究,但自结合的趋势使结合研究与生理配体难以解释。因此,为了在结构上定义这种关键的相互作用,我们重新设计了称为β-c1的β的细胞外区域,以生产用于NMR光谱的原核生物。考虑到I类MHC分子的完整细胞外结构域(例如H-K b )的尺寸较大,我们制得了截短形式的K b -t,具有有利于NMR测量的特性。该系统可以对TCR-pMHC之前的相互作用进行鲁棒的测量,直接与TCRαβ-pMHC相似。结合表面分析确定了一个接触表面,其大小可与TCRαβ–pMHC相比,但可能具有相当不同的结合方向。当结合到pMHC配体识别表面上时,TCRβ前体的倾斜与TCRαβ的垂直方向的倾斜将改变前TCR和TCR机械传感器之间作用力的方向,从而影响信号的启动。

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